Okada Yoshinori, Horie Keita, Akagi Kazuo
Department of Polymer Chemistry, Kyoto University, Katsura, Kyoto 615-8510, Japan.
Research Organization of Science and Technology, Ritsumeikan University, Kusatsu, Shiga 525-8577, Japan.
J Phys Chem B. 2025 Jun 26;129(25):6439-6454. doi: 10.1021/acs.jpcb.5c02914. Epub 2025 Jun 13.
A thermal stimulus-responsive chiral nematic liquid crystal (N*-LC) is prepared by adding a chiral dopant with a thermally switchable helical sense into a host nematic liquid crystal. The helical sense of the N*-LC is reversibly controlled with a temperature difference of just 20 °C. Helical poly(3,4-ethylenedioxythiophene)s (H-PEDOTs) are synthesized through the asymmetric electrochemical polymerization of -ethylenedioxythiophene (EDOT) in N*-LCs containing an electrolyte. The helical senses of the H-PEDOTs are rigorously controlled by modulating the polymerization temperature. Changes in the chiroptical and electrochemical properties of H-PEDOTs upon electrochemical doping and dedoping were investigated. The circular dichroism (CD) spectra measured from the visible to near-infrared regions indicate that the helically π-stacked structure formed in neutral H-PEDOT is preserved even in oxidized H-PEDOT after electrochemical doping. This is the first example revealing that a helically π-stacked structure exists in the polaron and bipolaron states of conjugated polymers. The relationships between the helical sense of the N*-LC and those of the helically π-stacked structure, screwed fibril bundles and spiral morphology of the H-PEDOT were elucidated using a newly proposed mechanism for electrochemical polymerization in the N*-LC.
通过将具有热可切换螺旋方向的手性掺杂剂添加到主体向列型液晶中,制备了一种热刺激响应型手性向列型液晶(N*-LC)。N*-LC的螺旋方向仅通过20°C的温差即可实现可逆控制。通过在含有电解质的N*-LC中对3,4-亚乙基二氧噻吩(EDOT)进行不对称电化学聚合,合成了螺旋状聚(3,4-亚乙基二氧噻吩)(H-PEDOT)。通过调节聚合温度,严格控制了H-PEDOT的螺旋方向。研究了H-PEDOT在电化学掺杂和去掺杂过程中手性光学和电化学性质的变化。从可见光到近红外区域测量的圆二色性(CD)光谱表明,即使在电化学掺杂后的氧化H-PEDOT中,中性H-PEDOT中形成的螺旋π堆积结构也得以保留。这是首次揭示共轭聚合物的极化子和双极化子状态中存在螺旋π堆积结构的例子。利用新提出的N*-LC中电化学聚合机制,阐明了N*-LC的螺旋方向与H-PEDOT的螺旋π堆积结构、螺旋纤维束和螺旋形态之间的关系。